化工进展 ›› 2023, Vol. 42 ›› Issue (6): 3233-3241.DOI: 10.16085/j.issn.1000-6613.2022-1489
郑昕(), 贾里, 王彦霖, 张靖超, 陈世虎, 乔晓磊, 樊保国()
收稿日期:
2022-08-11
修回日期:
2022-10-27
出版日期:
2023-06-25
发布日期:
2023-06-29
通讯作者:
樊保国
作者简介:
郑昕(1996—),男,硕士研究生,研究方向为能源动力。E-mail:zx358496420@163.com。
基金资助:
ZHENG Xin(), JIA Li, WANG Yanlin, ZHANG Jingchao, CHEN Shihu, QIAO Xiaolei, FAN Baoguo()
Received:
2022-08-11
Revised:
2022-10-27
Online:
2023-06-25
Published:
2023-06-29
Contact:
FAN Baoguo
摘要:
针对污泥与煤泥混烧时重金属(Pb、As、Cu、Cr、Cd)的迁移特性以及在混烧条件下矿物质对重金属固留效果的影响,利用电热管式炉并结合电感耦合等离子体质谱(ICP-MS)、X 射线衍射(XRD)等表征分析手段,研究不同燃烧条件下污泥与煤泥单独燃烧及多比例混烧过程。结果表明:污泥单独燃烧时,As的挥发率随温度升高而上升,Pb、Cu、Cd、Cr的挥发率在700℃时达到顶峰,在700~900℃时随着温度升高而下降。对于煤泥,Pb、Cr的挥发率随温度升高逐渐上升,Cu的挥发率随温度升高呈现先下降后上升的趋势,700℃时达到最低点,Cd的挥发率则相反。对于污泥-煤泥耦合燃烧过程,污泥-煤泥在5∶5掺混比条件下重金属固留率相比于2∶8及8∶2掺混比条件有所提升,5∶5掺混比条件下900℃燃烧温度时污泥-煤泥中矿物质交互作用对Pb、As、Cu、Cr和Cd实际残留率相比理论值分别提高了148.9%、5.8%、28.6%、112%和75.7%。混烧过程中重金属的固留主要受到矿物组分之间所发生的交互作用的影响。其中,对于单组分燃烧条件,SiO2、Al2O3、Fe2O3易与重金属反应生成难挥发化合物并在灰渣中赋存;而混烧过程可以促进硅铝酸盐及含铁化合物的分解,进而在大量生成SiO2等化合物的基础上,促进重金属残留率的提升。
中图分类号:
郑昕, 贾里, 王彦霖, 张靖超, 陈世虎, 乔晓磊, 樊保国. 污泥与煤泥混烧对重金属固留特性的影响[J]. 化工进展, 2023, 42(6): 3233-3241.
ZHENG Xin, JIA Li, WANG Yanlin, ZHANG Jingchao, CHEN Shihu, QIAO Xiaolei, FAN Baoguo. Effect of sewage sludge mixed with coal slime on heavy metal retention characteristics[J]. Chemical Industry and Engineering Progress, 2023, 42(6): 3233-3241.
样品 | 工业分析/% | 元素分析/% | |||||||
---|---|---|---|---|---|---|---|---|---|
Mad | Aad | Vad | FCad | Cd | Hd | Nd | Od | Sd | |
污泥 | 2.44 | 47.33 | 46.31 | 3.92 | 24.78 | 3.002 | 4.33 | 27.77 | 1.469 |
太选煤泥 | 0.38 | 51.16 | 13.04 | 35.42 | 37.7 | 2.17 | 1.03 | 2.33 | 5.57 |
表1 污泥和煤泥工业分析及元素分析
样品 | 工业分析/% | 元素分析/% | |||||||
---|---|---|---|---|---|---|---|---|---|
Mad | Aad | Vad | FCad | Cd | Hd | Nd | Od | Sd | |
污泥 | 2.44 | 47.33 | 46.31 | 3.92 | 24.78 | 3.002 | 4.33 | 27.77 | 1.469 |
太选煤泥 | 0.38 | 51.16 | 13.04 | 35.42 | 37.7 | 2.17 | 1.03 | 2.33 | 5.57 |
样品 | Pb | As | Cu | Cr | Cd |
---|---|---|---|---|---|
污泥 | 9.02 | 2.72 | 98.19 | 22.04 | 1.19 |
太选煤泥 | 19.65 | 2.2 | 71.6 | 10.93 | 0.16 |
表2 污泥和煤泥中的重金属含量单位:mg/kg
样品 | Pb | As | Cu | Cr | Cd |
---|---|---|---|---|---|
污泥 | 9.02 | 2.72 | 98.19 | 22.04 | 1.19 |
太选煤泥 | 19.65 | 2.2 | 71.6 | 10.93 | 0.16 |
样品 | SiO2 | Al2O3 | Fe2O3 | P2O5 | CaO | Cl |
---|---|---|---|---|---|---|
污泥 | 20.85 | 6.6 | 29.99 | 16.29 | 8.48 | 0.863 |
太选煤泥 | 44.82 | 27.38 | 12.2 | 0.53 | 2.72 | 0.941 |
表3 污泥和煤泥的灰分组成(质量分数,%)
样品 | SiO2 | Al2O3 | Fe2O3 | P2O5 | CaO | Cl |
---|---|---|---|---|---|---|
污泥 | 20.85 | 6.6 | 29.99 | 16.29 | 8.48 | 0.863 |
太选煤泥 | 44.82 | 27.38 | 12.2 | 0.53 | 2.72 | 0.941 |
图1 污泥在不同燃烧温度下XRD图Q—石英,SiO2;D—磷酸亚铁,Fe3(PO4)2;N—偏磷酸铁,Fe(PO3)3;H—氧化铁,Fe2O3;M—白云母,K{Al2[AlSi3O10](OH)2};I—黄铅矿,Pb2OSO4;K—高岭土,Al2Si2O5(OH)4;G—LiNiFe2O4;Y—硅酸铬,Cr2SiO4;P—磷酸氧铅,Pb4O(PO4)2;V—CdO·Al2O3·3SiO2
图8 5∶5混烧条件下灰渣XRD图Q—石英,SiO2;K—高岭土,Al2Si2O5(OH)4;G—LiNiFe2O4;H—氧化铁,Fe2O3;U—斜硅铜矿,Cu5Si4O12(OH)2;O—砷化铁,FeAs3O9;L—氧化铅,Pb5O8;Z—硅酸锌,ZnSiO3;M—白云母,K{Al2[AlSi3O10](OH)2}
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